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Surface Adjustment of Reverse Phase Protein Arrays using Positive Control Spots

机译:使用阳性对照点对反相蛋白质阵列进行表面调节

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Reverse phase protein arrays (RPPA) measure the relative expression levels of a protein in many samples simultaneously. Observed signal from these arrays is a combination of true signal, additive background, and multiplicative spatial effects. Background subtraction alone is not sufficient to remove all nonbiological trends from the data. We developed a surface adjustment that uses information from positive control spots to correct for spatial trends on the array beyond additive background. This method uses a generalized additive model to estimate a smoothed surface from positive controls. When positive controls are printed in a dilution series, a nested surface adjustment performs an intensity-based correction. When applicable, surface adjustment is able to remove spatial trends and increase within slide replicate agreement better than background subtraction alone as demonstrated on two sets of arrays. This work demonstrates the importance of including positive control spots on the array.
机译:反相蛋白质阵列(RPPA)同时测量许多样品中蛋白质的相对表达水平。从这些阵列观察到的信号是真实信号,附加背景和乘法空间效应的组合。仅靠背景扣除还不足以从数据中消除所有非生物趋势。我们开发了一种表面调整技术,该技术利用来自阳性对照斑点的信息来校正阵列中除累加背景以外的空间趋势。该方法使用广义加性模型从阳性对照中估计平滑表面。当阳性对照以稀释系列打印时,嵌套的表面调整将执行基于强度的校正。适用时,表面调整能够消除空间趋势并在载玻片复制协议中增加,其效果要好于单独进行背景扣除,如两组阵列所示。这项工作证明了在阵列上包括阳性对照斑点的重要性。

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